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首页> 外文期刊>Journal of food engineering >Generating phytosterol nanoparticles in nanoporous bioaerogels via supercritical carbon dioxide impregnation: Effect of impregnation conditions
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Generating phytosterol nanoparticles in nanoporous bioaerogels via supercritical carbon dioxide impregnation: Effect of impregnation conditions

机译:通过超临界二氧化碳浸渍在纳米多孔生物气凝胶中生成植物甾醇纳米颗粒:浸渍条件的影响

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摘要

Phytosterols are known for promoting human health and wellness; however, their water-insolubility limits their bioaccessibility and consequently bioavailability. In this study, a novel method based on supercritical carbon dioxide (SC-CO2) impregnation of phytosterols into nanoporous starch aerogels (NSAs) was optimized to form phytosterol nanoparticles with reduced crystallinity in order to improve their bioaccessibility. Impregnation conditions, namely temperature and cooling rates, were optimized for the highest impregnation capacity, smallest particle size, and improved phytosterol distribution. The highest impregnation capacity was 99 mg phytosterol/g NSA, and the size of the impregnated phytosterols ranged between 59 and 87 nm. More isolated phytosterol nanoparticles were generated via fast cooling which drastically decreased the solubility of phytosterols in SC-CO2. The crystallinity of the impregnated phytosterols was reduced compared to the original phytosterol. The proposed method is a novel method to generate food grade phytosterol nanoparticles with reduced crystallinity which improves the water solubility. (C) 2017 Elsevier Ltd. All rights reserved.
机译:植物甾醇以促进人类健康为己任。但是,它们的水不溶性限制了它们的生物利用度,因此也限制了生物利用度。在这项研究中,基于植物甾醇的超临界二氧化碳(SC-CO2)浸渍到纳米多孔淀粉气凝胶(NSA)中的一种新方法进行了优化,以形成结晶度降低的植物甾醇纳米颗粒,以提高其生物利用度。优化了浸渍条件,即温度和冷却速率,以实现最高的浸渍能力,最小的粒径和改善的植物甾醇分布。最高浸渍量为99 mg植物甾醇/ g NSA,浸渍植物甾醇的大小在59至87 nm之间。通过快速冷却产生了更多的分离的植物甾醇纳米颗粒,这大大降低了植物甾醇在SC-CO2中的溶解度。与原始植物甾醇相比,浸渍植物甾醇的结晶度降低。所提出的方法是产生具有降低的结晶度的食品级植物甾醇纳米颗粒的新方法,其改善了水溶性。 (C)2017 Elsevier Ltd.保留所有权利。

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